SE3 Labs develops advanced computer vision systems that enable machines to accurately perceive and interpret the three-dimensional world. The company specializes in leveraging event cameras and 3D perception algorithms for robust spatial understanding. This technology is designed to enhance robotics and autonomous system performance through precise environmental modeling.
Funding
€9.4M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.


Founders
Product
Problem
Current 3D computer vision systems often struggle with real-time, high-fidelity spatial understanding, particularly in dynamic environments. This limitation hinders the performance of autonomous systems and robotics that require precise environmental perception.
Solution
SE3 Labs provides a proprietary 3D computer vision platform that enables machines to accurately perceive and interpret spatial environments. Our solution utilizes event cameras, which capture asynchronous pixel-level changes, to achieve high temporal resolution and low latency in data acquisition. This data is processed through advanced deep learning models for real-time 3D scene reconstruction and semantic understanding. The platform delivers robust spatial awareness, enhancing the capabilities of applications in robotics, autonomous navigation, and augmented reality by providing a more detailed and responsive environmental model.
Target Audience
Our primary customers are developers and engineers in the robotics, autonomous vehicle, and augmented reality sectors seeking to enhance their systems' spatial perception capabilities.
Features
- Event camera-based data acquisition for high temporal resolution and low latency
- Deep learning models for real-time 3D scene reconstruction and depth estimation
- Semantic segmentation of captured environments
- Robust performance in challenging lighting conditions and high-speed motion scenarios
- SDK for integration into robotics and autonomous system pipelines
- Optimized algorithms for efficient processing on embedded hardware